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Salmonella enterica subsp. enterica comprises a number of serovars, many of which pose an epidemiological threat to humans and are a worldwide cause of morbidity and mortality. Most reported food infection outbreaks involve the serovars Salmonella Enteritidis and Salmonella Typhimurium. Rapid identification to determine the primary sources of the bacterial contamination is important to the improvement of public health. In recent years, many DNA-based techniques have been applied to genotype Salmonella. Herein, we report the use of a manual TRS-PCR approach for the differentiation of the Salmonella enterica subspecies enterica serovars in a single-tube assay. One hundred seventy Salmonella strains were examined in this work. These consisted of serovars S. Enteritidis, S. Typhimurium, S. Infantis, S. Virchow, S. Hadar, S. Newport and S. Anatum. Five of the TRS-primers, N6(GTG)4, N6(CAC)4, N6(CGG)4, N6(CCG)4 and N6(CTG)4, perfectly distinguished the S. Enteritidis and S. Typhimurium serovars, and the N6(GTG)4 primer additionally grouped the other five frequently isolated serovars. In our opinion, the TRS-PCR methodology could be recommended for a quick and simple DNA-based test for inter-serovar discrimination of Salmonella strains.  相似文献   

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Summary Six newSalmonella types isolated in Ghana are described.S. volta, 11: 4: 1,z13, z28 was isolated from a swine;S.agona 4,12: fgs:—,S.wa, 16: b: 1,5S.technimani, 28: c: z6 andS.tafo, 1, 4 12, 27: z35: 1,7 were isolated from cattle;S.mampong, 13,22: z35: 1,6, was isolated from a lizzard.  相似文献   

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用一种植物的总基因组DNA与近缘或远缘物种的染色体杂交,可以研究植物近缘或远缘物种基因组进化关系。以拟高粱总基因组DNA为探针,对栽培高粱、甜高粱基因组进行杂交,结果表明栽培高粱、甜高粱和拟高粱基因组中重复序列存在很大的同源性,基因组进化关系表现出保守性。栽培高粱与拟高粱基因组间重复序列的同源性要比甜高粱与拟高粱间重复序列的同源性高。  相似文献   

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Summary Four newSalmonella types isolated in the Netherlands are described.S.tilburg, 1,3,19; d∶1, w, was isolated from the lymphnodes of a swine.S.bunnik, 43; z42:-, was isolated from a reptile.S.overschie, 51; 1,v∶1,5 was isolated from a tortoise.S.sterrenbos, 6,8;d: enx, was isolated from the lymphnodes of a patient.  相似文献   

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Sequences of two internal transcribed spacer regions between 18S and 28S rRNA for recently described yeasts species, Saccharomyces kunashirensis, S. martiniae, S. rosinii, and S. transvaalensis, were determined to assess their phylogenetic relationship to the other Saccharomyces species. In the two phylogenetic trees constructed by the neighbor-joining method, independent branches reflected that delimitation of the four new species was valid. Received: 17 June 1998 / Accepted: 7 August 1998  相似文献   

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Results of neutron-scattering experiments to determine the distances between seven pairs of proteins within the 30 S ribosomal subunit are presented. These results, combined with earlier data (Engelman et al., 1975; Moore et al., 1977) lead to the construction of a three-dimensional map of the positions of the centers of mass of proteins S3, S4, S5, S7, S8 and S9. The properties of this map and its relationship to other information on the structure of the 30 S subunit are discussed.  相似文献   

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We have previously reported the development of a technique utilizing nitrocellulose filters, which rapidly separates ribosomal protein-ribosomal RNA complexes from unbound protein. We have used this technique to obtain binding data for the association of proteins S4, S7, S8, S15, S17, and S20 with 16S RNA. With the exception of protein S17, the association behavior for each of these proteins exhibits a single binding site with a unique binding constant. The apparent association constants have been calculated and have been found to have a range from 1.6 x 10(6) M-1 for protein S7 to 7.1 x 10(7) M-1 for protein S17. The Scatchard plot for the protein S17 binding data is biphasic, suggesting that within the RNA population two different binding sites exist, each with a different apparent association constant.  相似文献   

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M J Marion  C Marion 《FEBS letters》1988,232(2):281-285
Trypsin immobilized on collagen membranes has been used to digest accessible ribosomal proteins of rat liver 40 S subunits. Six proteins (S2, S6, S10, S14, S15 and S25) have been found to be highly exposed on the surface of 40 S particles. They appear to be in close physical contact and localized in the same region of the subunit, most likely protruding at its surface. Electric birefringence reveals that digestion of these proteins results in unfolding of subunits: the birefringence of 40 S particles becomes negative, like that of RNA, the relaxation time undergoes a 15-fold decrease and the mechanism of orientation is drastically modified.  相似文献   

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《Ibis》1946,88(2):243-245
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We have used rapid probing methods to follow the changes in reactivity of residues in 16 S rRNA to chemical and enzymatic probes as ribosomal proteins S2, S3, S10, S13 and S14 are assembled into 30 S subunits. Effects observed are confined to the 3' major domain of the RNA and comprise three general classes. (1) Monospecific effects, which are attributable to a single protein. Proteins S13 and S14 each affect the reactivities of different residues which are adjacent to regions previously found protected by S19. S10 effects are located in two separate regions of the domain, the 1120/1150 stem and the 1280 loop; both of these regions are near nucleotides previously found protected by S9. Both S2 and S3 protect different nucleotides between positions 1070 and 1112. In addition, S2 protects residues in the 1160/1170 stem-loop. (2) Co-operative effects, which include residues dependent on the simultaneous presence of both proteins S2 and S3 for their reactivities to appear similar to those observed in native 30 S subunits. (3) Polyspecific effects, where proteins S3 and S2 independently afford the same protection and enhancement pattern in three distal regions of the domain: the 960 stem-loop, the 1050/1200 stem and in the upper part of the domain (nucleotides 1070 to 1190). Proteins S14 and S10 also weakly affect the reactivities of several residues in these regions. We believe that several of the protected residues of the first class are likely sites for protein-RNA contact while the third class is indicative of conformational rearrangement in the RNA during assembly. These results, in combination with the results from our previous study of proteins S7, S9 and S19, are discussed in terms of the assembly, topography and involvement in ribosomal function of the 3' major domain.  相似文献   

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